30CPH03 IRF | Alldatasheet
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VRRM Repetitive Peak Reverse Voltage 300 V IF(AV) Average Rectified Forward Current Per Leg 15 A @ T C = 142°C Total Device 30 IFSM Non Repetitive Peak Surge Current Per Leg 140 @ T J = 25°C TJ, TSTG Operating Junction and Storage Temperatures - 65 to 175 °C Parameters Max Units Case Styles 30CPH03 TO247 International Rectifier's 300V series are the state of the art Ultrafast recovery rectifiers designed with optimized performance of forward voltage drop and Ultrafast recovery time. The planar structure and the platinum doped life time control guarantee the best overall performance, ruggedness and reliability characteristics. These devices are intended for use in the output rectification stage of SMPS, UPS, DC-DC converters as well as freewheeling diodes in low voltage inverters and chopper motor drives. Their extremely optimized stored charge and low recovery current minimize the switching losses and reduce over dissipation in the switching element and snubbers. www.irf.com Base Common Cathode Anode Anode Common Cathode 21 2
Bulletin PD-20035 rev. D 04/03 2 www.irf.com VBR , Vr Breakdown Voltage, 300 - - V I R = 100µA Blocking Voltage VF Forward Voltage - 1.05 1.25 V I F = 15A, TJ = 25°C - 0.85 1.00 V I F = 15A, TJ = 125°C IR Reverse Leakage Current - 0.05 40 µA V R = VR Rated - 12 400 µA T J = 125°C, VR = VR Rated C T Junction Capacitance - 45 - pF V R = 300V LS Series Inductance - 8 - nH Measured lead to lead 5mm from package body Electrical Characteristics @ TJ = 25°C (unless otherwise specified) Parameters Min Typ Max Units Test Conditions Dynamic Recovery Characteristics @ TJ = 25°C (unless otherwise specified) Parameters Min Typ Max Units TJ Max. Junction Temperature Range - 65 - 175 °C TStg Max. Storage Temperature Range - 65 - 175 R thJC Thermal Resistance, Junction to Case Per Leg - 0.9 2.0 °C/W R thJA Thermal Resistance, Junction to Ambient Per Leg - - 40 R thCS Thermal Resistance, Case to Heatsink - 0.4 - Wt Weight - 6.0 - g - 0.21 - (oz) Mounting Torque 6.0 - 12 Kg-cm 5.0 - 10 lbf.in Thermal - Mechanical Characteristics Typical Socket Mount ‚ Mounting Surface, Flat, Smooth and Greased trr Reverse Recovery Time - - 40 ns I F = 1.0A, diF/dt = 50A/µs, VR = 30V -3 2 - T J = 25°C 45 - T J = 125°C IRRM Peak Recovery Current - 2.4 - A T J = 25°C Q rr Reverse Recovery Charge - 38 - nC T J = 25°C - 137 - T J = 125°C IF = 15A diF /dt = -200A/µs VR = 200V Parameters Min Typ Max Units Test Conditions
Bulletin PD-20035 rev. D 04/03 30CPH03 www.irf.com Fig. 1 - Typical Forward Voltage Drop Characteristics Reverse Voltage - VR (V) Fig. 3 - Typical Junction Capacitance Vs. Reverse Voltage Forward Voltage Drop - VFM (V) Instantaneous Forward Current - I F (A) Reverse Current - I R (µA) Reverse Voltage - VR (V) Junction Capacitance - C T (pF) Fig. 4 - Max. Thermal Impedance Z thJC Characteristics t1, Rectangular Pulse Duration (Seconds) Thermal Impedance Z thJC (°C/W) 100 Tj = 175˚C Tj = 125˚C Tj = 25˚C 0.001 0.01 0.1 100 1000 0 50 100 150 200 250 300 Tj = 175˚C 25˚C 100˚C 125˚C 150˚C Fig. 2 - Typical Values Of Reverse Current Vs. Reverse Voltage 100 1000 0 50 100 150 200 250 300 T = 25˚CJ 0.01 0.1 Single Pulse (Thermal Resistance) D = 0.50 D = 0.20 D = 0.10 D = 0.05 D = 0.02 D = 0.01 2t PDM Notes: 1. Duty factor D = t1/ t2 . 2. Peak Tj = Pdm x ZthJC + Tc .
Bulletin PD-20035 rev. D 04/03 4 www.irf.com (3) Formula used: TC = TJ - (Pd + PdREV ) x RthJC ; Pd = Forward Power Loss = IF(AV) x VFM @ (IF(AV) / D) (see Fig. 6); PdREV = Inverse Power Loss = VR1 x IR (1 - D); IR @ VR1 = rated VR Fig. 5 - Max. Allowable Case Temperature Vs. Average Forward Current Fig. 6 - Forward Power Loss Characteristics Average Power Loss ( Watts ) trr ( ns ) Qrr ( nC ) Allowable Case Temperature (°C) Fig. 8 - Typical Stored Charge vs. di F /dtFig. 7 - Typical Reverse Recovery vs. di F /dt di F /dt (A/µs )di F /dt (A/µs ) 120 130 140 150 160 170 180 0 5 10 15 20 25 DC Square wave (D = 0.50) Rated Vr applied see note (3) 0 5 10 15 20 25 RMS Limit D = 0.01 D = 0.02 D = 0.05 D = 0.10 D = 0.20 D = 0.50 DC Average Forward Current - I F(AV) (A) Average Forward Current - I F(AV) (A) 100 100 1000 If = 30A, Tj = 25˚C If = 30A, Tj = 125˚C 100 1000 100 1000 If = 30A, Tj = 125˚C If = 30A, Tj = 25˚C
Bulletin PD-20035 rev. D 04/03 30CPH03 www.irf.com Fig. 10 - Reverse Recovery Waveform and Definitions IRFP250 D.U.T. L = 70µH V = 200VR 0.01Ω G D S dif/dt ADJUST ta tb trr Q rr IF IRRM IRRM0.5 di(rec)M/dt 0.75IRRM 1 di /dtf Fig. 9 - Reverse Recovery Parameter Test Circuit Reverse Recovery Circuit di F /dt di F /dt 4. Qrr - Area under curve defined by t rr and IRRM 5. di (rec) M / dt - Peak rate of change of current during t b portion of t rr 1. diF/dt - Rate of change of current through zero crossing 2. IRRM - Peak reverse recovery current 3. trr - Reverse recovery time measured from zero crossing point of negative going IF to point where a line passing through 0.75 IRRM and 0.50 IRRM extrapolated to zero current Q rr = t rr x I RRM
Bulletin PD-20035 rev. D 04/03 6 www.irf.com Conforms to JEDEC Outline TO-247 Dimensions in millimeters and (inches) Outline Table 15.90 (0.626) 15.30 (0.602) 14.20 (0.559) 14.80 (0.583) 3.70 (0.145) 4.30 (0.170) 5.30 (0.208) 5.70 (0.225) 5.50 (0.217) 4.50 (0.177) (2 PLCS.) 3.55 (0.139) 3.65 (0.144) 2.20 (0.087) MAX. 1.00 (0.039) 1.40 (0.056) 3.20 (0.126) MAX. 0.40 (0.213) 0.80 (0.032) 4.70 (0.185) 5.30 (0.209) 1.5 (0.059) 2.5 (0.098) 2.40 (0.095) MAX. 5.43 (0.213) 5.47 (0.216) 20.30 (0.800) 19.70 (0.775) 1 2 3 DIA. Marking Information PART NUMBER LOGO RECTIFIER INTERNATIONAL ASSEMBLY LOT CODE LINE H WEEK 35 YEAR 0 = 2000 DATE CODE WITH ASSEMBLY LOT CODE 5657 ASSEMBLED ON WW 35, 2000 IN THE ASSEMBLY LINE "H" 30CPH03 56 57 035H EXAMPLE: THIS IS A 30CPH03 Base Common Cathode Anode Anode Common Cathode 21 2
Bulletin PD-20035 rev. D 04/03 30CPH03 www.irf.com IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105 TAC Fax: (310) 252-7309 Visit us at www.irf.com for sales contact information. 04/03 Data and specifications subject to change without notice. This product has been designed and qualified for Industrial Level. Qualification Standards can be found on IR's Web site.